4.6 Article

Effects of Environmental Conditions and Bed Configuration on Oxygen Transfer Efficiency in Aerated Constructed Wetlands

Journal

WATER
Volume 14, Issue 20, Pages -

Publisher

MDPI
DOI: 10.3390/w14203284

Keywords

aeration; atmospheric pressure; constructed wetlands; gravel size; oxygen transfer

Funding

  1. scholarship platform Academic and Student Mobility of the Pacific Alliance (Programa de Movilidad Estudiantil y Academica de la Alianza del Pacifico, Notification Carta ) [48/2019]
  2. Agencia Nacional de Investigacion y Desarrollo de Chile (ANID) [ANID/FONDECYT/11180672]
  3. Universidad Catolica del Maule

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This research evaluated the oxygen transfer efficiency in beds to be used as aerated constructed wetlands using diffused aeration systems. The results showed that oxygen transfer efficiency was negatively influenced by environmental conditions, especially altitude, and that the size of the gravel used in the bed is related to the oxygen transfer efficiency.
This research evaluated the oxygen transfer efficiency in beds to be used as aerated constructed wetlands. The research methods included oxygen transfer efficiency evaluations in several bed configurations using diffused aeration systems. Experiments were conducted at two locations with different environmental conditions: a) Talca (Chile), 120 m above sea level (m.a.s.l.), 0.99 Atm and b) Cajica (Colombia), 2550 m.a.s.l., 0.76 Atm. A column with only clean water and three bed configurations representing aerated constructed wetlands were evaluated. These configurations included: (a) coarse gravel, (b) coarse gravel with an empty core in the middle (inner container), and (c) fine gravel. Three airflow rates were evaluated: (a) low, 0.7 L/min; (b) medium, 2.5 L/min; and (c) high, 3.6 L/min. The overall oxygen mass transfer coefficient, standard oxygen transfer rate, and standard oxygen transfer efficiency were the variables calculated from the oxygen transfer evaluation tests. The research results indicated that in diffused aeration systems, oxygen transfer efficiency was negatively influenced by environmental conditions, particularly altitude, which limits the driving force for oxygen transfer into water. Furthermore, the results showed that the size of the gravel used in the bed is related to the oxygen transfer efficiency: the larger the gravel size, the higher the oxygen transfer, regardless of the altitude. Finally, research regarding oxygen transfer in aerated constructed wetlands has signaled the need for a standard procedure for aeration testing, and this work suggests a new methodology.

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